You can find some my articles in English

Marina Krasnovskikh, Aleksandr Ketov, Vladimir Korotaev, Natalia Sliusar, Iakov Vaisman.
Production of liquid fuel by pyrolysis of waste polyolefins

// Zastita Materijala. 2026. 67.
doi.org/10.62638/ZasMat1384

Jin K., Chen F., Li M., Ketov A., Orlov A., Krasnovskikh M. Utilization of sewage sludge's resource potential in brick manufacturing in China.

Construction and Geotechnics. 2025.- V.16(4).- 91-103.
DOI: 10.15593/2224-9826/2025.4.07

Andrei V. Orlov, Aleksandr Ketov, Fu Liu, Kangming Jin, Xinwei Jiang, Shaodong Wang, Yabin Li. Redox-stable BaB4O7–BaB8O13 eutectic for low-temperature sintering of shale–coal gangue ceramic bricks:
From lab-scale synthesis to pilot-scale validation

// Ceramics International.- 2025.
doi.org/10.1016/j.ceramint.2025.11.427

Zhikina L. A., Minkin A. M., Krasnovskikh M. P., Yatsenko E. A., Ketov A. A. Hydrogel Assisted Optical Fiber Attachment in a Connector

// Glass and Ceramics.- 2024.- Vol. 80.- 11–12.- 3.- P.487-490.
DOI 10.1007/s10717-024-00638-5

Ketov A., Krasnovskikh M., Ofrikhter V., Zhang N. Processing of rice husk ash with production of popular silicate products.

Construction and Geotechnics. 2024.- V.15.- No.1- 91-101. DOI: 10.15593/2224-9826/2024.1.07
ered.pstu.ru/index.php/CG/article/view/4200/3310

Ketov A., Krasnovskikh M., Kalinina E., Ofrikhter V., Tatiannikov D. Influence of a nanostructural modifier from automobile tires on consumer properties of bitumen

// Nanotechnologies in Construction.- 2023.- Т. 15.- № 3.- 267–273.
doi.org/10.15828/2075-8545-2023-15-3-267-273

Ketov A., Sliusar N., Tsybina A., Ketov I., Chudinov S., Krasnovskikh M. Bosnic V. Plant Biomass Conversion to Vehicle Liquid Fuel as a Path to Sustainability

// Resources.- 2022.- 11 (8).- 75. doi.org/10.3390/resources11080075

Ketov A., Korotaev V., Sliusar N., Bosnic V., Krasnovskikh M., Gorbunov A. Baseline Data of Low-Density Polyethylene Continuous Pyrolysis for Liquid Fuel Manufacture

// Recycling.- 2022.- 7.- 2. doi.org/10.3390/recycling7010002
Recycling of rice husks ash for the preparation of resistant, lightweight and environment-friendly fired bricks
// Construction and Building Materials.- 2021.- V. 302.- 124385 doi.org/10.1016/j.conbuildmat.2021.124385
Amorphous silica wastes for reusing in highly porous ceramics
// International Journal of Applied Ceramic Technology.- 2021.- V.18.- Issue2.- P. 394-404. doi:10.1111/ijac.13654
Promising Areas for Producing Bitumen-like Materials Based on Synthetic Polymers Waste
// Ecology and Industry of Russia, 2020, Vol. 24, Iss. 5, pp. 34–39 (main text in Russian, annotation in English)
End of Life Tires as a Possible Source of Toxic Substances Emission in the Process of Combustion
// Resources 2019, 8, 11
Rice Hulls as a Renewable Complex Material Resource // Resources 2018, 7(2), 31
Glass cullet: a hard way for cellular glass from useless waste // ISBN: 978-3-330-65181-4, OmniScriptum GmbH & Co.- 2017.- 61 p
The Expansion Kinetics of Cellular Glass in the Thermoplastic State under the Hydrated Mechanism of Gas Formation // Glass Physics and Chemistry, 2017, Vol. 43, No. 4, pp. 330–334
Cellular glass obtained from non-powder preforms by foaming with steam // Ceramics International, 2016, 42, pp. 15261-15268
The Scientific and Technological Aspects of Foam Glass Production // Glass Physics and Chemistry, 2015, Vol. 41, No. 2, pp. 157–162
Oxidation of Carbon by Water Vapor in Hydrate Gas-Formation Mechanism in Manufacture of Cellular Glass // Russian Journal of Applied Chemistry, 2015, Vol. 88, No. 3, pp. 382−385
Thermal Stability of Mineral-Wool Heat-Insulating Materials // Russian Journal of Applied Chemistry, 2014, Vol. 87, No. 10, pp. 1430−1434
Production of Foamed Materials from Synthesized Silicate Glasses // Russian Journal of Applied Chemistry, 2013, Vol. 86, No. 7, pp. 952−957